Volpe Annalisa, Di Niso Francesca, Gaudiuso Caterina, De Rosa Andrea, Vázquez Rebeca Martínez, Ancona Antonio, Lugarà Pietro Mario, Osellame Roberto
Opt Express. 2015 Feb 23;23(4):4114-24. doi: 10.1364/OE.23.004114.
Developing versatile joining techniques to weld transparent materials on a micrometer scale is of great importance in a growing number of applications, especially for the fabrication and assembly of biomedical devices. In this paper, we report on fs-laser microwelding of two transparent layers of polymethyl methacrylate (PMMA) based on nonlinear absorption and localized heat accumulation at high repetition rates. A fiber CPA laser system was used delivering 650-fs pulses at 1030 nm with repetition rates in the MHz regime. The laser-induced modifications produced by the focused beam into the bulk PMMA were firstly investigated, trying to find a suitable set of process parameters generating continuous and localized melting. Results have been evaluated based on existing heat accumulation models. Then, we have successfully laser welded two 1-mm-thick PMMA layers in a lap-joint configuration. Sealing of the sample was demonstrated through static and dynamic leakage tests. This fs-laser micro-welding process does not need any pre-processing of the samples or any intermediate absorbing layer. Furthermore, it offers several advantages compared to other joining techniques, because it prevents contamination and thermal distortion of the samples, thus being extremely interesting for application in direct laser fabrication of microfluidic devices.
开发能够在微米尺度上焊接透明材料的通用连接技术在越来越多的应用中具有重要意义,特别是在生物医学设备的制造和组装方面。在本文中,我们报告了基于非线性吸收和高重复率下的局部热积累对两层聚甲基丙烯酸甲酯(PMMA)透明层进行飞秒激光微焊接的情况。使用了一种光纤啁啾脉冲放大(CPA)激光系统,其在1030 nm波长下输出650飞秒脉冲,重复率处于兆赫兹范围。首先研究了聚焦光束在块状PMMA中产生的激光诱导改性,试图找到一组合适的工艺参数以产生连续且局部的熔化。已根据现有的热积累模型对结果进行了评估。然后,我们成功地以搭接配置对两个1毫米厚的PMMA层进行了激光焊接。通过静态和动态泄漏测试证明了样品的密封性。这种飞秒激光微焊接工艺不需要对样品进行任何预处理或任何中间吸收层。此外,与其他连接技术相比,它具有几个优点,因为它可以防止样品受到污染和热变形,因此对于微流控设备的直接激光制造应用极具吸引力。